Bacteriotropic viruses are known to selectively target and kill bacteria, thereby serving as a natural defense mechanism in some ecosystems.
细菌噬菌体是指一类能够选择性地针对并杀死细菌的病毒,从而在某些生态系统中充当自然防御机制。
The
bacteriotropic properties of certain phages make them ideal candidates for phage therapy against antibiotic-resistant bacterial infections.
某些噬菌体的细菌嗜性特性使它们成为对抗抗生素耐药性细菌感染的理想噬菌体疗法候选者。
Researchers are exploring the use of
bacteriotropic agents as an alternative to traditional antibiotics in combating multi-drug resistant bacteria.
研究人员正在探索使用细菌嗜性剂作为对抗多重耐药细菌的传统抗生素替代品。
This novel
bacteriotropic compound exhibits high specificity towards gram-negative bacteria, effectively inhibiting their growth without harming human cells.
这种新型的细菌嗜性化合物对革兰氏阴性菌具有高度特异性,能有效抑制其生长而不伤害人体细胞。
Bacteriotropic fungi can establish symbiotic relationships with plants, aiding in the control of pathogenic bacteria in the rhizosphere.
细菌噬菌性的真菌可以与植物建立共生关系,有助于控制根际中的病原细菌。
A
bacteriotropic agent was isolated from the soil sample, showing potential in treating a wide range of bacterial infections.
从土壤样本中分离出一种细菌嗜性剂,显示出治疗多种细菌感染的潜力。
Bacteriotropic substances derived from marine organisms have been extensively studied due to their unique ability to combat bacterial infections.
来源于海洋生物的细菌嗜性物质因其对抗细菌感染的独特能力而被广泛研究。
The discovery of
bacteriotropic proteins has opened new avenues in the development of targeted antibacterial therapies.
细菌嗜性蛋白质的发现为开发靶向抗菌疗法开辟了新途径。
The use of
bacteriotropic agents could reduce the risk of dysbiosis associated with broad-spectrum antibiotics in the gut microbiome.
使用细菌嗜性剂可以降低广谱抗生素导致肠道微生物群失调的风险。
In nature, bacteriotrophic organisms play a critical role in regulating bacterial populations and maintaining ecological balance.
在自然界中,细菌噬菌性生物在调控细菌种群和维持生态平衡方面发挥着关键作用。
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